Published March 12, 2011 | Version v1
Journal article

On the release of metronidazole from natural rubber latex membranes

  • 1. Departamento de Ciencias Biologicas - Faculdade de Ciencias e Letras de Assis-Universidade Estadual Paulista, Av. Dom Antonio, 2100, Zip Code: 19806-900, Assis, SP (Brazil)
  • 2. Departamento de Fisica e Quimica-Universidade Federal de Itajuba, Itajuba, MG (Brazil)
  • 3. Universidade do Sagrado Coracao-Rua Irma Arminda, 10-50, Bauru, SP (Brazil)
  • 4. Instituto de Fisica de Sao Carlos-Universidade de Sao Paulo, Sao Carlos, SP (Brazil)
  • 5. Departamento de Fisica - FC - Universidade Estadual Paulista, Bauru, SP (Brazil)

Description

The controlled release of drugs can be efficient if a suitable encapsulation procedure is developed, which requires biocompatible materials to hold and release the drug. In this study, a natural rubber latex (NRL) membrane is used to deliver metronidazole (MET), a powerful antiprotozoal agent. MET was found to be adsorbed on the NRL membrane, with little or no incorporation into the membrane bulk, according to energy dispersive X-ray spectroscopy. X-ray diffraction and FTIR spectroscopy data indicated that MET retained its structural and spectroscopic properties upon encapsulation in the NRL membrane, with no molecular-level interaction that could alter the antibacterial activity of MET. More importantly, the release time of MET in a NRL membrane in vitro was increased from the typical 6-8 h for oral tablets or injections to ca. 100 h. The kinetics of the drug release could be fitted with a double exponential function, with two characteristic times of 3.6 and 29.9 h. This is a demonstration that the induced angiogenesis known to be provided by NRL membranes can be combined with a controlled release of drugs, whose kinetics can be tailored by modifying experimental conditions of membrane fabrication for specific applications.

Availability note (English)

Available from http://dx.doi.org/10.1016/j.msec.2010.09.007

Additional details

Identifiers

DOI
10.1016/j.msec.2010.09.007;
PII
S0928-4931(10)00225-0;

Publishing Information

Journal Title
Materials Science and Engineering. C, Biomimetic Materials, Sensors and Systems
Journal Volume
31
Journal Issue
2
Journal Page Range
p. 272-275
ISSN
0928-4931

Optional Information

Copyright
Copyright (c) 2010 Elsevier Science B.V., Amsterdam, The Netherlands, All rights reserved.